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Research Activities in Fission Chamber Modeling in Support of the Nuclear Energy Industry

机译:核能产业支持裂变室建模的研究活动

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Fission chambers are widely used in the nuclear industry. As an example, they play a major role in the control of any fission reactor and are thus regarded as a key component for ensuring their safety. They are also employed in the material testing reactors for monitoring irradiations. We have recently started a research program, the objective of which is to improve the performance of those neutron detectors in terms of lifetime, calibration and online diagnosis. In this paper, we present several studies carried out in order to model the signal delivered by a fission chamber. First, the simulation of the deposit evolution allowed us to select the most appropriate fissile material for a given spectrum and fluence. Second, we studied the impact of the bias voltage and filling gas characteristics on the charge collection time. Finally, the simulation of a pulse signal prior to amplification showed how it is important to have a satisfactory knowledge of the energy for creating ion pairs to accurately assess the signal in current or Campbelling mode.
机译:裂变室广泛应用于核工业。作为一个例子,它们在任何裂变反应堆的控制的重要作用,并因此被视为确保其安全的重要组成部分。它们在材料试验反应堆监测辐照也使用。我们最近启动了一个研究计划,其目标是提高这些中子探测器的一生中,校准和在线诊断方面的性能。在本文中,我们提出了一些研究,以通过裂变室传递的信号模型进行。首先,存款进化模拟使我们能够选择最合适的裂变材料对于给定的频谱和能量密度。其次,我们研究了在电荷收集时间偏置电压和填充气体特性的影响。最后,在扩增前的脉冲信号的模拟显示具有的能量的令人满意的知识创建离子对准确地评估在当前或Campbelling模式的信号是如何重要。

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